This research deals with the investigation of the self-healing behavior after ballistic damage of ethylene-methacrylic acid ionomers and theirs blends with epoxidized natural rubber (ENR). The self-healing capability was studied by ballistic puncture tests under different experimental conditions as sample thickness, bullet speed, diameter and shape. Bullet speed ranging from few hundreds meters per second to few km/s were employed. The healing efficiency was evaluated by applying a pressure gradient trough the plates and by checking for possible flow at the damage zone. A morphology analysis of the impact area was made observing all samples by scanning electron microscope
Self-healing behavior of ionomer blends containing both rapidly crystallizing phase and with higher ...
The development of self-healing materials, based on polymer blends, is an important issue either fro...
The effect of blending on the self-healing behavior of an ethylene/methacrylic acid copolymer ionome...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
The development of materials with the ability of intrinsic self-repairing after damage in a fashion ...
Ethylene-co-methacrylic acid (EMAA) based ionomers have thermo-mechanical properties strongly depend...
Ethylene-co-methacrylic acid (EMAA) based ionomers have thermo-mechanical properties strongly depend...
Self-healing behavior of ionomer blends containing both rapidly crystallizing phase and with higher ...
The development of self-healing materials, based on polymer blends, is an important issue either fro...
The effect of blending on the self-healing behavior of an ethylene/methacrylic acid copolymer ionome...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
This research deals with the investigation of the self-healing behavior after ballistic damage of et...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
In this work, the mechanical and the self-healing behaviors of an ethylene-co-methacrylic acid ionom...
The development of materials with the ability of intrinsic self-repairing after damage in a fashion ...
Ethylene-co-methacrylic acid (EMAA) based ionomers have thermo-mechanical properties strongly depend...
Ethylene-co-methacrylic acid (EMAA) based ionomers have thermo-mechanical properties strongly depend...
Self-healing behavior of ionomer blends containing both rapidly crystallizing phase and with higher ...
The development of self-healing materials, based on polymer blends, is an important issue either fro...
The effect of blending on the self-healing behavior of an ethylene/methacrylic acid copolymer ionome...